The hip cup of this invention includes a porous metal outer shell, preferably formed from fiber metal, and a compression molded polyethylene component defining an articulating surface at its center for contact with a prosthetic femoral head. The porous outer shell is placed within a mold and the polyethylene component is compression molded within the shell. To prevent the porous shell from collapsing or distorting about its equatorial edge (and thereby distorting the articulating surface) a constraining ring is fitted over the edge of the shell prior to the molding of the polyethylene component. The ring is held in contact with the shell by the molded polyethylene. The constraining ring prevents the edges of the shell from radially distorting during impaction into a prepared acetabulum or during use.

Patent
   5639280
Priority
Feb 02 1996
Filed
Feb 02 1996
Issued
Jun 17 1997
Expiry
Feb 02 2016
Assg.orig
Entity
Large
50
24
all paid
4. A prosthetic hip cup having a shell formed entirely from fiber metal mesh, the shell defining an equatorial edge, a ring positioned in contact with the shell such that a first portion of the ring overlays the equatorial edge and a second portion contacts the shell at its interior adjacent the equatorial edge, a polyethylene component being molded to and positioned within the interior of the shell and having a portion overlaying said first portion of the ring.
1. A prosthetic acetabular component, said component comprising;
a porous shell being substantially hemispherical and having an equatorial edge,
a polyethylene component being molded to the porous shell and overlying the equatorial edge of the shell, and
a ring positioned between the polyethylene component and equatorial edge of the shell, said ring contacting an interior of the shell adjacent the equatorial edge, said ring constituting means for preventing distortion of said shell along said equatorial edge.
5. A prosthetic acetabular component comprising a porous shell having an equatorial edge and an interior surface, a ring contacting the equatorial edge of the shell and a portion of the interior of the shell adjacent the equatorial edge, a polyethylene component being molded to the shell and being in intimate contact with a substantial portion of the interior of the shell and the ring such that the equatorial edge of the shell is contacted by the ring and the ring is held in position by the polyethylene component, said ring constituting means for preventing distortion of the shell about the equatorial edge.
2. The component of claim 1 wherein said ring has an L-shaped cross section with a portion of the ring overlying the equatorial edge.
3. The component of claim 1 wherein the porous shell is formed from fiber metal.

This invention relates to prosthetic acetabular components and more specifically relates to a hip cup having a porous outer shell and a molded polyethylene articulating surface wherein a ring contacts the equatorial edge of the outer shell to prevent distortion during use.

The hip cup of this invention includes a porous metal outer shell, preferably formed from fiber metal, and a compression molded polyethylene component defining an articulating surface at its center for contact with a prosthetic femoral head. The porous outer shell is placed within a mold and the polyethylene component is compression molded within the shell. To prevent the porous shell from collapsing or distorting about its equatorial edge ( and thereby distorting the articulating surface), a constraining ring is fitted over the edge of the shell prior to the molding of the polyethylene component. The ring is held in contact with the shell by the molded polyethylene. The constraining ring prevents the edges of the shell from radially distorting during impaction into a prepared acetabulum or during use.

Accordingly, it is an object of the invention to provide for a novel acetabular hip cup.

Another object of the invention is to provide for a hip cup having a porous shell with a constraining ring positioned adjacent the equatorial edge of the shell to prevent radial distortion of the shell.

Still another object of the invention is to provide for a hip cup having a polyethylene component molded within a porous shell wherein a constraining ring is positioned about the equatorial edge of the shell.

Still other objects of the invention will become apparent upon a reading of the following description taken with the accompanying drawings.

FIG. 1 is an exploded view of a porous metal shell and the constraining ring of the invention.

FIG. 2 is a sectional view of the invention illustrating the porous shell, constraining ring, and molded polyethylene component of the invention.

The preferred embodiment herein described is not intended to be exhaustive or to limit the invention to the precise form disclosed. Rather, it is chosen and described to enable others skilled in the art to utilize the teachings of the invention.

FIG. 1 illustrates a shell 10 formed from fiber metal in a manner known in the art. Shell 10 defines an equatorial edge 12. A constraining ring 14 is provided and is L-shaped in cross section such that a portion of the ring is positioned interior of edge 12 and a portion is overlying the edge 12 (see FIG. 2). Polyethylene component 16 is molded into the interior of shell 10 by placing shell 10 and ring 14 within the cavity of a mold and filling the shell with polyethylene flake. The flake is compression molded into the shell (using known compression molding techniques) such that a portion of the polyethylene interdigitates with the fiber metal shell. It is preferred that an outermost portion of the shell be filled with a filler material to limit the amount of polyethylene interdigitation. After molding, the filler material may be removed to expose a portion of the porous metal. This method of preventing the complete occlusion of pores within fiber metal is known in the orthopaedic art. As illustrated in FIG. 2, the molded polyethylene component contacts the ring so as to hold the ring in tight contact with the edge 12. As further illustrated, the polyethylene component 16 defines an articulating surface for contact with a prosthetic femoral head (not shown).

In use, when the component is impacted into a prepared acetabulum and during its use within the patient, the constraining ring prevents the shell from collapsing or otherwise distorting about its equatorial edge. Such distortion, if permitted, would distort the articulating surface of the polyethylene component.

It should be understood that the polyethylene component is preferably formed from ultra high molecular weight polyethylene as is commonly used in the field of orthopaedics.

It should be further understood that the invention is not to be limited to the precise form disclosed, but rather may be modified within the keeping of the appended claims.

Gilbert, Stephen G., Warner, David B.

Patent Priority Assignee Title
10167447, Dec 21 2012 Zimmer, Inc. Supports and methods for promoting integration of cartilage tissue explants
10736747, Oct 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
10966837, Dec 21 2009 JOINTMEDICA LTD Cup with conical permanent pegs
5879404, Apr 23 1996 Biomet Limited Acetabular cups and methods of their manufacture
6116911, Mar 27 1997 Johns Hopkins University, The Bone substitute for training and testing
6500208, Oct 16 1998 BIOMET INC , A CORP OF THE STATE OF INDIANA Nonmodular joint prosthesis convertible in vivo to a modular prosthesis
6916340, Oct 16 1998 Biomet, Inc. Tibial prosthesis convertible in vivo to a modular prosthesis
6923833, Apr 09 2002 ORTHOWAZ, LTD Biologically reabsorbable acetabular constraining components and materials for use with a hip replacement prosthesis and bioreabsorbable materials to augment hip replacement stability and function
7384430, Jun 30 2004 DePuy Products, Inc.; DEPUY PRODUCTS, INC Low crystalline polymeric material for orthopaedic implants and an associated method
7445639, Feb 23 2001 Biomet Manufacturing, LLC Knee joint prosthesis
7497874, Feb 23 2001 Biomet Manufacturing, LLC Knee joint prosthesis
7597715, Apr 21 2005 Biomet Manufacturing, LLC Method and apparatus for use of porous implants
7635447, Feb 17 2006 Biomet Manufacturing, LLC Method and apparatus for forming porous metal implants
7879275, Dec 30 2004 Depuy Synthes Products, LLC Orthopaedic bearing and method for making the same
7883653, Dec 30 2004 Depuy Synthes Products, LLC Method of making an implantable orthopaedic bearing
7896921, Dec 30 2004 Depuy Synthes Products, LLC Orthopaedic bearing and method for making the same
8012215, Oct 16 1998 Biomet Manufacturing Corp Tibial prosthesis convertible in vivo to a modular prosthesis removal of permanently secured primary bearing
8021432, Feb 17 2006 Biomet Manufacturing, LLC Apparatus for use of porous implants
8066778, Apr 21 2005 Biomet Manufacturing, LLC Porous metal cup with cobalt bearing surface
8123814, Feb 23 2001 Biomet Manufacturing, LLC Method and appartus for acetabular reconstruction
8123815, Nov 24 2008 Biomet Manufacturing, LLC Multiple bearing acetabular prosthesis
8157869, Jan 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
8163028, Jan 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
8187280, Oct 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
8197550, Apr 21 2005 Biomet Manufacturing, LLC Method and apparatus for use of porous implants
8266780, Apr 21 2005 Biomet Manufacturing, LLC Method and apparatus for use of porous implants
8292967, Apr 21 2005 Biomet Manufacturing, LLC Method and apparatus for use of porous implants
8308810, Jul 14 2009 Biomet Manufacturing, LLC Multiple bearing acetabular prosthesis
8328873, Jan 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
8480751, Jan 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
8480757, Aug 26 2005 ZIMMER, INC Implants and methods for repair, replacement and treatment of disease
8497121, Dec 20 2006 Zimmer Orthobiologics, Inc. Method of obtaining viable small tissue particles and use for tissue repair
8518433, Dec 11 2003 ZIMMER, INC Method of treating an osteochondral defect
8524268, Dec 11 2003 ZIMMER, INC Cadaveric allogenic human juvenile cartilage implant
8551181, Feb 23 2001 Biomet Manufacturing, LLC Method and apparatus for acetabular reconstruction
8562616, Oct 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
8652507, Dec 11 2003 ZIMMER, INC Juvenile cartilage composition
8765165, Dec 11 2003 ZIMMER, INC Particulate cartilage system
8784863, Dec 11 2003 ZIMMER, INC Particulate cadaveric allogenic cartilage system
8834914, Dec 11 2003 ZIMMER, INC Treatment methods using a particulate cadaveric allogenic juvenile cartilage particles
8936648, Jan 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
9017416, Dec 21 2009 JOINTMEDICA LTD Method of forming a polymer component
9138318, Apr 12 2007 ZIMMER, INC Apparatus for forming an implant
9283079, Dec 21 2009 JOINTMEDICA LTD Cup with crosslinked polymer layer cable ties
9375316, Feb 23 2001 Biomet Manufacturing, LLC. Method and apparatus for acetabular reconstruction
9445903, Nov 24 2008 Biomet Manufacturing, LLC Multi-bearing acetabular prosthesis
9445904, Jul 14 2009 Biomet Manufacturing, LLC Multiple bearing acetabular prosthesis
9649193, Dec 21 2009 JOINTMEDICA LTD Cup with crosslinked polymer layer modular pegs
9763793, Oct 10 2007 Biomet Manufacturing, LLC Knee joint prosthesis system and method for implantation
9956081, Dec 21 2009 Cup with cross-linked polymer layer
Patent Priority Assignee Title
3829904,
3891997,
3903549,
4206517, Dec 01 1977 BIOMEDICAL ENGINEERING TRUST, A CORP OF NEW JERSEY Floating center prosthetic joint
4324006, May 30 1977 Charnley Surgical Inventions Limited Blank for acetabular prosthesis
4327449, Jul 10 1979 Charnley Surgical Inventions Limited Acetabular prosthesis
4437193, Jan 18 1982 Richards Medical Company Protrusio cup
4479271, Oct 26 1981 Zimmer, Inc. Prosthetic device adapted to promote bone/tissue ingrowth
4623351, Apr 20 1983 British Technology Group Limited Endoprosthetic bone joint devices
4623352, Jan 18 1982 Richards Medical Company Protrusio cup
4681589, Jun 01 1984 Adjustable acetabular cup prosthesis as part of a total cup replacement system
4715860, Aug 23 1985 The Regents of the University of California Porous acetabular hip resurfacing
4718911, Feb 19 1986 HOWMEDICA OSTEONICS CORP Acetabular cup assembly
4743262, Jun 01 1984 Acetabular cup prosthesis
4792337, Oct 16 1986 Protek AG Acetabulum part for a total hip prosthesis
4795470, Apr 21 1983 Johnson & Johnson Medical GMBH Two-part socket for hip-joint prosthesis
4834759, Apr 15 1986 PROTEK AG, A CORP OF SWITZERLAND Endoprosthesis for a hip joint
4863475, Aug 31 1984 ZIMMER TECHNOLOGY, INC Implant and method for production thereof
4955919, May 06 1983 Multi-component joint prosthesis with increased wall flexibility facilitating component assembly
5092897, Mar 15 1990 IMPLANTOLOGY LLC Implantable acetabular prosthetic hip joint with universal adjustability
5108445, Jan 04 1990 Pfizer Hospital Products Group, Inc. Prosthetic bearing assembly
GB2139098,
GB2207606,
RE31865, Jun 21 1978 Artificial joints, in particular coxo-femoral joints
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Executed onAssignorAssigneeConveyanceFrameReelDoc
Jan 26 1996WARNER, DAVID B ZIMMER, INCASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS 0078480350 pdf
Jan 26 1996GILBERT, STEPHEN G ZIMMER, INCASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS 0078480350 pdf
Feb 02 1996Zimmer, Inc.(assignment on the face of the patent)
Jan 14 2002Bristol-Myers Squibb CompanyZIMMER, INCASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS 0127290494 pdf
Jun 28 2002ZIMMER, INCZIMMER TECHNOLOGY, INC ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS 0138620766 pdf
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